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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Sea ice circulation around the Beaufort Gyre: The changing role of wind forcing and the sea ice state
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Sea ice circulation around the Beaufort Gyre: The changing role of wind forcing and the sea ice state

机译:博福特涡流周围的海冰循环:强迫作用和海冰状态的变化作用

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摘要

Sea ice drift estimates from feature tracking of satellite passive microwave data are used to investigate seasonal trends and variability in the ice circulation around the Beaufort Gyre, over the multidecadal period 1980–2013. Our results suggest an amplified response of the Beaufort Gyre ice circulation to wind forcing, especially during the late 2000s. We find increasing anticyclonic ice drift across all seasons, with the strongest trend in autumn, associated with increased ice export out of the southern Beaufort Sea (into the Chukchi Sea). A flux gate analysis highlights consistency across a suite of drift products. Despite these seasonal anticyclonic ice drift trends, a significant anticyclonic wind trend occurs in summer only, driven, in-part, by anomalously anticyclonic winds in 2007. Across all seasons, the ice drift curl is more anticyclonic than predicted from a linear relationship to the wind curl in the 2000s, compared to the 1980s/1990s. The strength of this anticyclonic ice drift curl amplification is strongest in autumn and appears to have increased since the 1980s (up to 2010). In spring and summer, the ice drift curl amplification occurs mainly between 2007 and 2010. These results suggest nonlinear ice interaction feedbacks (e.g., a weaker, more mobile sea ice pack), enhanced atmospheric drag, and/or an increased role of the ocean. The results also show a weakening of the anticyclonic wind and ice circulation since 2010.
机译:来自卫星被动微波数据特征跟踪的海冰漂移估计值被用于调查1980-2013年的十年间波弗特回旋处的冰循环的季节趋势和变异性。我们的结果表明,尤其是在2000年代后期,Beaufort Gyre冰环对强迫作用的放大反应。我们发现所有季节的反气旋冰漂移都在增加,秋季趋势最强烈,这与从博福特海南部(进入楚科奇海)的冰出口增加有关。磁通门分析突出了整个漂移产品套件的一致性。尽管有这些季节性的反气旋冰漂移趋势,但仅在部分程度上受2007年异常反气旋风的驱动,夏季才出现显着的反气旋风趋势。在整个季节中,冰漂移卷曲的反气旋性要比从线性关系到冰期的线性预测的要强。与1980年代/ 1990年代相比,2000年代的风向卷曲。这种抗气旋冰漂移卷曲增强的强度在秋季最强,并且自1980年代(到2010年)以来似乎有所增加。在春季和夏季,冰漂移卷曲的放大主要发生在2007年至2010年之间。这些结果表明,非线性的冰相互作用反馈(例如,较弱,更易移动的海冰袋),大气阻力增加和/或海洋作用增强。 。结果还显示,自2010年以来,反气旋风和冰的循环减弱。

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